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Tensile and fatigue properties of a cast aluminum alloy with Ti, Zr and V additions

机译:添加Ti,Zr和V的铸造铝合金的拉伸和疲劳性能

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摘要

The development of aluminum alloys for automotive powertrain applications is in high demand due to the required weight reduction and fuel efficiency. The aim of this study was to evaluate the microstructure and mechanical properties of a newly developed Al-7%Si-1l%Cu-0.5%Mg cast alloy with further additions of Ti, Zr and V. The microstructure of the alloys consisted of Al dendrites surrounded by Al-Si eutectic structures with Mg/Cu/Fe-containing Si particles, and contained nano-sized trialuminide precipitates in the Ti/Zr/V added alloys. The alloys had a significantly (60-87%) higher yield strength but lower ductility than A356-T6 and 319-T6 alloys. With the addition of Ti/Zr/V both monotonic and cyclic yield strengths increased, but ductility and hardening capacity decreased due to reduced dislocation storage capacity caused by stronger interactions between dislocations and trialuminide precipitates. The Zr/V-modified alloy had a longer fatigue life, and all the alloys exhibited cyclic stabilization at low strain amplitudes and cyclic hardening at higher strain amplitudes. With increasing strain amplitude, the extent of cyclic hardening increased. Both cyclic yield strength and cyclic strain hardening exponent were higher than the corresponding monotonic yield strength and strain hardening exponent, indicating that a stronger cyclic hardening ability of the alloys developed. Fatigue cracks were observed to initiate at near-surface defects, and crack propagation was mainly characterized by the formation of fatigue striations together with secondary cracks.
机译:由于要求的重量减轻和燃料效率高,因此需要开发用于汽车动力总成应用的铝合金。这项研究的目的是评估新开发的Al-7%Si-1l%Cu-0.5%Mg铸造合金以及进一步添加的Ti,Zr和V的组织和力学性能。合金的微观组织由Al组成树枝状晶体被Al-Si共晶结构所包围,具有含Mg / Cu / Fe的Si颗粒,并在添加Ti / Zr / V的合金中包含纳米级三聚酰亚胺沉淀物。与A356-T6和319-T6合金相比,该合金的屈服强度显着提高(60-87%),但延展性较低。随着Ti / Zr / V的加入,单调和循环屈服强度均增加,但延展性和硬化能力下降,这是由于位错与三聚酰亚胺沉淀物之间更强的相互作用导致位错储存能力降低所致。 Zr / V改性合金具有更长的疲劳寿命,并且所有合金在低应变振幅下均表现出循环稳定,而在较高应变振幅下则表现出循环硬化。随着应变幅度的增加,循环硬化的程度增加。循环屈服强度和循环应变硬化指数均高于相应的单调屈服强度和应变硬化指数,表明合金具有较强的循环硬化能力。观察到疲劳裂纹在近表面缺陷处产生,裂纹扩展的主要特征是疲劳条纹和二次裂纹的形成。

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  • 来源
    《Materials Science and Engineering》 |2011年第28期|p.8128-8138|共11页
  • 作者单位

    Department of Mechanical and Industrial Engineering, Ryerson University, 350 Victoria Street, Toronto, ON M5B 2K3, Canada;

    Department of Mechanical and Industrial Engineering, Ryerson University, 350 Victoria Street, Toronto, ON M5B 2K3, Canada;

    Department of Mechanical and Industrial Engineering, Ryerson University, 350 Victoria Street, Toronto, ON M5B 2K3, Canada;

    CANMET-Materials Technology Laboratory, Natural Recourses Canada, 183 Longwood South Street, Hamilton, ON L8P OAT, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cast aluminum alloy; heat treatment; microstructure; tensile properties; low cycle fatigue; cyclic hardening;

    机译:铸造铝合金热处理;微观结构拉伸性能低周疲劳;循环硬化;

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